Physiological effects of five different marine natural organic matters (NOMs) and three different metals (Cu, Pb, Zn) on early life stages of the blue mussel (Mytilus galloprovincialis)

Author:

Nogueira Lygia Sega1234,Bianchini Adalto34,Smith Scott5,Jorge Marianna Basso234,Diamond Rachael L.5,Wood Chris M.123

Affiliation:

1. Department of Zoology, University of British Columbia, Vancouver, British Columbia, Canada

2. Department of Biology, McMaster University, Hamilton, Ontario, Canada

3. Bamfield Marine Sciences Centre, Bamfield, British Columbia, Canada

4. Instituto de Ciências Biológicas, Universidade Federal do Rio Grande—FURG, Rio Grande, Rio Grande do Sul, Brazil

5. Department of Chemistry and Biochemistry, Wilfrid Laurier University, Waterloo, Ontario, Canada

Abstract

Metals are present in aquatic environments as a result of natural and anthropogenic inputs, and may induce toxicity to organisms. One of the main factors that influence this toxicity in fresh water is natural organic matter (NOM) but all NOMs are not the same in this regard. In sea water, possible protection by marine NOMs is not well understood. Thus, our study isolated marine NOMs by solid-phase extraction from five different sites and characterized them by excitation-emission fluorescence analysis—one inshore (terrigenous origin), two offshore (autochthonous origin), and two intermediate in composition (indicative of a mixed origin). The physiological effects of these five NOMS alone (at 8 mg/L), of three metals alone (copper, lead and zinc at 6 µg Cu/L, 20 µg Pb/L, and 25 µg Zn/L respectively), and of each metal in combination with each NOM, were evaluated in 48-h exposures of mussel larvae. Endpoints were whole body Ca2++Mg2+-ATPase activity, carbonic anhydrase activity and lipid peroxidation. By themselves, NOMs increased lipid peroxidation, Ca2++Mg2+-ATPase, and/or carbonic anhydrase activities (significant in seven of 15 NOM-endpoint combinations), whereas metals by themselves did not affect the first two endpoints, but Cu and Pb increased carbonic anhydrase activities. In combination, the effects of NOMs predominated, with the metal exerting no additional effect in 33 out of 45 combinations. While NOM effects varied amongst different isolates, there was no clear pattern with respect to optical or chemical properties. When NOMs were treated as a single source by data averaging, NOM had no effect on Ca2++Mg2+-ATPase activity but markedly stimulated carbonic anhydrase activity and lipid peroxidation, and there were no additional effects of any metal. Our results indicate that marine NOMs may have direct effects on this model marine organism, as well as protective effects against metal toxicity, and the quality of marine NOMs may be an important factor in these actions.

Funder

CRD grants

Nickel Producers Environmental Research Association (NiPERA)

International Copper Association (ICA)

Copper Development Association (CDA)

International Zinc Association (IZA)

International Lead Zinc Research Organization (ILZRO)

Canada Research Chair Program

International Research Chair Program

CAPES

Publisher

PeerJ

Subject

General Agricultural and Biological Sciences,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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